Network Packet Processing Mode-Aware Power Management for Data Center Servers

In data center servers, power management (PM) exploiting Dynamic Voltage and Frequency Scaling (DVFS) for processors can play a crucial role to improve energy efficiency. However, we observe that current PM policies (i.e., governors) not only considerably increase tail response time (i.e., violate a...

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Veröffentlicht in:IEEE computer architecture letters 2020-01, Vol.19 (1), p.1-4
Hauptverfasser: Kang, Ki-Dong, Park, Gyeongseo, Kim, Nam Sung, Kim, Daehoon
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Sprache:eng
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Zusammenfassung:In data center servers, power management (PM) exploiting Dynamic Voltage and Frequency Scaling (DVFS) for processors can play a crucial role to improve energy efficiency. However, we observe that current PM policies (i.e., governors) not only considerably increase tail response time (i.e., violate a given Service Level Objective (SLO)) but also hurt energy efficiency. Tackling limitations of current PM governors, we propose NMAP , N etwork packet processing M ode- A ware P ower management. NMAP improves energy efficiency while satisfying given SLOs, considering packet processing status on a core for PM by monitoring transitions between network packet processing modes - interrupt and polling. Tracking the transitions, NMAP detects moments that a core cannot process packets fast enough and forces the core to immediately raise the voltage and frequency (V/F) state. As a result, NMAP can provide not only low response time but also low energy consumption. Our experiment shows that NMAP improves tail response time by up to 4.1× compared with the ondemand governor, reducing energy by up to 44.6 percent compared with the performance governor.
ISSN:1556-6056
1556-6064
DOI:10.1109/LCA.2019.2926079